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In Situ Transformation of Tin Microparticles to Nanoparticles on Nanotextured Carbon Support Boosts the Efficiency of the Electrochemical CO₂ Reduction (2025)
Journal Article
Burwell, T., Thangamuthu, M., Besley, E., Chen, Y., Pyer, J., Alves Fernandes, J., Lanterna, A. E., Licence, P., Aliev, G. N., Theis, W., & Khlobystov, A. N. (2025). In Situ Transformation of Tin Microparticles to Nanoparticles on Nanotextured Carbon Support Boosts the Efficiency of the Electrochemical CO₂ Reduction. ACS Applied Energy Materials, 8(4), 2281-2290. https://doi.org/10.1021/acsaem.4c02830

Developing sustainable, efficient catalysts for the electrocatalytic reduction of CO2 to valuable products remains a crucial challenge. Our research demonstrates that combining tin with nanostructured carbon support leads to a dynamic interface promo... Read More about In Situ Transformation of Tin Microparticles to Nanoparticles on Nanotextured Carbon Support Boosts the Efficiency of the Electrochemical CO₂ Reduction.

Collaborating for Impact: Navigating Partnerships and Overcoming Challenges across the Sustainable Development Goals (2025)
Journal Article
Azim, H., Johnston, A.-L., Nixon, M., Woodliffe, J. L., Theunissen, R., Suresh, R., Sivapalan, S., Bobo, J., & Licence, P. (2025). Collaborating for Impact: Navigating Partnerships and Overcoming Challenges across the Sustainable Development Goals. ACS Sustainable Chemistry and Engineering, 13(3), 1164-1173. https://doi.org/10.1021/acssuschemeng.4c10171

We illustrate the importance of early career perspectives and diverse partnerships to develop solutions and overcome key challenges to achieve the Sustainable Development Goals.